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A histological procedure to study fungal infection in the wax moth Galleria mellonella

机译:组织学过程,研究蜡蛾圆盘菌的真菌感染

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The invertebrate model Galleria mellonella is a widely used factitious host to study the microbial pathogenesis in vivo . However, a specific procedure for the recovery and the processing of the infected tissues, important for a better understanding of the host-pathogen interactions, has not been reported to our knowledge. In the present study we describe a new procedure of fixation and processing of larval tissue that allows studying the larval topographic anatomy and assessing the morphological changes due to the fungal infection. Lepidopteran larvae were infected with Candida albicans strains displaying various biofilm-forming abilities. The whole larvae were then examined for tissue changes by histological techniques. We show that comparing cutting planes, serial transversal sections of paraffin-embedded larva result in better accuracy and information recovering. Using this technique, it was possible to preserve the integrity of G. mellonella internal structures allowing the detailed analysis of morphological differences in different experimental groups ( i.e ., healthy vs infected larvae). We were also able to study strain-related differences in the pathogenesis of C. albicans by observing the immune response elicited and the invasiveness of two isolates within the larval tissues. In general, by processing the whole larva and optimizing routinely histochemical stainings, it is possible to visualize and analyse infected tissues. Various degrees of pathogenicity (strain- or inoculum-related), and the infection time course can be described in details. Moreover, the host immune response events can be followed throughout the infectious process leading to a comprehensive picture of the studied phenomenon.
机译:无脊椎动物模型梅隆菌(Malleria mellonella)是一个广泛使用的人为宿主,用于研究体内微生物的发病机理。但是,据我们所知,尚未有用于更好地了解宿主与病原体相互作用的恢复和处理被感染组织的特定程序。在本研究中,我们描述了一种固定和处理幼虫组织的新程序,该程序可以研究幼虫的地形解剖并评估由于真菌感染引起的形态变化。鳞翅目幼虫感染了显示各种生物膜形成能力的白色念珠菌菌株。然后通过组织学技术检查整个幼虫的组织变化。我们显示,比较切割平面,石蜡包埋的幼虫的连续横切面会导致更好的精度和信息恢复。使用该技术,可以保留梅花线虫内部结构的完整性,从而可以详细分析不同实验组(即,健康幼虫与感染幼虫)的形态差异。我们还能够通过观察引起的免疫应答和幼虫组织内两种分离株的侵袭性,研究白念珠菌发病机理中与菌株相关的差异。通常,通过处理整个幼虫并常规优化组织化学染色,可以可视化和分析受感染的组织。可以详细描述各种程度的致病性(与菌株或接种物有关),以及感染的时间过程。此外,在整个感染过程中都可以追踪宿主的免疫反应事件,从而全面了解所研究的现象。

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